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Direct evidence of autosomal recessive inheritance of Arg24 to termination codon in purine nucleoside phosphorylase gene in a family with a severe combined immunodeficiency patient.

Purine nucleoside phosphorylase (PNP) deficiency is a rare immunodeficiency disease involving a T-lymphocyte-dysfunction that is fatal unless bone marrow transplantation is successful. In this study we undertook genetic analysis of a patient with PNP deficiency. Sequencing of the PNP gene, which is located on chromosome 14ql3, of the patient led to the identification of three point mutations in exon 2 at amino acid positions 20 (His, silent mutation), 24 (Arg-->termination codon) and 51 (Ser-->Gly). Intrafamilial sequence analysis of exon 2 revealed that both parents were heterozygous for the Arg24 and termination codon 24 alleles. Two of their three children had inherited different homozygous alleles, termination codon 24 for the patient, and Arg24 for his healthy sibling. Transcriptional termination was suggested as the mechanism giving rise to the disorder in this case. A lack of PNP protein was also confirmed by immunoblot analysis of the patient's hemolysate. This could be the first report providing evidence of autosomal recessive inheritance in PNP deficiency by sequence-based analysis.

Amino Acid Sequence↗

CD4 and CD8 T lymphocyte inheritance. Evidence for major autosomal recessive genes.

The CD4/CD8 ratio has long been used for the follow-up and monitor of many infectious diseases. Following the demonstration in 1983 that the CD4/CD8 ratio in the mouse is under genetic control, it was subsequently shown to be controlled by a major locus in man. To define the mode of inheritance of the CD4/CD8 ratio, we addressed the absolute number of CD4 and CD8 cells in a large unselected control sample and in members of 70 nuclear families. Pedigrees of nuclear families were analyzed by complex segregation analysis. Data was adjusted prior to this analysis to remove the effects of relevant covariates. The non-genetic-transmission and the multifactorial model could be easily rejected for both CD4 and CD8 cells. Among the different inheritance models, involving both a major gene and a multifactorial (MFT) component, a major autosomal recessive gene with a residual MFT effect controlling the high number of CD4 and a major autosomal recessive gene with a residual MFT effect controlling the high number of CD8 cells were the significantly best-fitting ones. Our findings have some practical implications. Among all, the knowledge of the CD4+ cell number and the proportion between CD4+ and CD8+ T cells could be a useful parameter in predicting human immunodeficiency virus infection outcome.

Adolescent↗

Inheritance of heart rate variability: the kibbutzim family study.

Heart rate variability (HRV) measures are associated with coronary heart disease incidence and mortality. Therefore insight into the genetic and environmental determinants of these measures may have clinical relevance. We assessed the role of genetic and environmental factors of time domain and frequency domain HRV indices. Participants were 451 kibbutz members, aged 15 and up, belonging to 80 families. HRV indices were calculated from Holter recordings measured over 5 min. Our data indicate that for the two time- and four frequency domain indices, a mixture of two normal distributions fit the data significantly better than a single normal distribution (P<0.05). We used complex segregation analysis to infer the modes of inheritance of these HRV measures. We found evidence for possible involvement of a recessive major gene in the inheritance of the root mean square of successive differences in RR intervals (RMSSD), which is predominantly vagally mediated. A putative major gene explains 28%-34% of the adjusted inter-individual variability. The SD, determined by a mixture of mechanisms, is influenced by environmental and polygenic effects, but not by a major gene. The findings regarding the heritability of the frequency domain indices were not conclusive. However, the involvement of genetic factors was not rejected. Additional studies in extended families are needed to confirm the involvement of major genes in the determination of the autonomic activity.

Adolescent↗

Inheritance characteristics of microsatellite DNA loci in experimental families of Japanese flounder Paralichthys olivaceus.

Allele segregating patterns of microsatellite DNA loci in 5 experimental families of Japanese flounder Paralichthys olivaceus and genotype frequencies for deviation from Hardy-Weinberg expectations (HWE) in natural P. olivaceus populations were studied to assess inheritability. Of the 12 microsatellite loci examined, 1 locus had a possibility of scoring errors of heterozygous individuals caused by unreproducible polymerase chain reaction amplifications of a particular allele. At the remaining 11 loci, almost all of alleles were segregated according to Mendelian transmission, and observed genotype frequencies in natural populations were consistent with HWE. The results demonstrated here would provide useful information supporting the suitability of these microsatellite loci as inheritable P. olivaceus genetic markers.

Journal Article↗

Pattern of inheritance of microsatellite loci in the squid Loligo pealeii (Mollusca: Cephalopoda).

Six microsatellite loci are described for the squid Loligo pealeii. All loci exhibit some degree of allelic diversity. The pattern of inheritance was tested for 3 loci through an analysis of the filial genotypes from a female-male mating. At all 3 loci, the ratios of the filial genotypes conformed to the ratios expected by Mendelian inheritance. The hypervariable loci will be useful in studies on sexual selection in this species, whereas the relatively less variable loci will be useful to address questions of population structure.

Journal Article↗

Primary hyperhidrosis--evidence for autosomal dominant inheritance.

Primary hyperhidrosis is a neurogenic disorder of unknown cause characterized by excessive sweating in the palmar surface of the hands, armpits, groin and feet. In the course of a therapeutic trial for primary hyperhidrosis, 62 % of patients reported a positive family history. Examination of these pedigrees demonstrated a sibling recurrence risk of lambdas = 29-48 and an offspring recurrence risk of lambdao = 41-68 indicating that hyperhidrosis can be an inherited condition. The pattern of inheritance suggests an autosomal dominant mode of transmission with incomplete disease penetrance.

Female↗

Mode of inheritance of amitraz resistance in a Brazilian strain of the southern cattle tick, Boophilus microplus (Acari: Ixodidae).

The southern cattle tick, Boophilus microplus (Canestrini), has developed resistance to amitraz in several countries in recent years. A study was conducted at the USDA Cattle Fever Tick Research Laboratory in Texas to investigate the mode of inheritance of amitraz resistance with cross-mating experiments. The Muñoz strain, a laboratory reared acaricide-susceptible reference strain, was used as the susceptible parent and the Santa Luiza strain, originating in Brazil, was used as the resistant parent. A modified Food and Agriculture Organization Larval Packet Test was used to measure the levels of susceptibility of larvae of the parental strains, F1, backcross, F2, and F3 generations. Results of reciprocal crossing experiments suggested that amitraz resistance was inherited as an incomplete recessive trait. There was a strong maternal effect on larval progeny's susceptibility to amitraz in both the F1 and the subsequent generations. The values of the degree of dominance were estimated at -0.156 and -0.500 for the F1 larvae with resistant and susceptible female parents, respectively. Results of bioassays on larval progeny of the F1 backcrossed with the resistant parent strain and that of the F2 generations suggested that more than one gene was responsible for amitraz resistance in the Santa Luiza strain. Comparisons of biological parameters (engorged female weight, egg mass weight, and female-to-egg weight conversion efficiency index) indicated significant differences between different genotypes. The differences appeared to be heritable, but not related to amitraz resistance. Results from this study may have significant implications for the management of amitraz resistance.

Animals↗

Incorporating inheritance into models for understanding ventilatory behavior.

Ventilation and its components (frequency and tidal volume) appear to be determined to a significant extent by inheritance. Gene manipulation, gene identification, and functional genomics now offer powerful tools to identify the strength and mode of inheritance for ventilatory behavior under steady-state and non-steady-state conditions, in health and in disease. Conscious integration of genetic principles into existing explanatory models may increase the likelihood of detecting traits that correlate with protein systems responsible for the structures and the functional components of respiration.

Humans↗

Rotor's syndrome. A distinct inheritable pathophysiologic entity.

Urinary total, isomer I and isomer III coproporphyrin excretion was determined in 11 patients with Rotor's syndrome, 23 phenotypically normal family members, 16 patients with the Dubin-Johnson syndrome and 20 normal control subjects. Control subjects excreted 24.8 +/- 1.3 per cent (mean SEM) of urinary coproporphyrin as isomer I. Patients with the Dubin-Johnson syndrome excreted 88.9 +/- 1.3 per cent as urinary coproporphyrin I, and patients with Rotor's syndrome excreted 64.8 +/- 2.5 per cent as urinary coproporphyrin I, significantly different from the control subjects and the patients with the Dubin-Johnson syndrome (p less than 0.001). Eight phenotypically normal parents and children of patients with Rotor's syndrome excreted 42.9 +/- 5.4 per cent as urinary coproporphyrin I, intermediate between results in patients with Rotor's syndrome and control subjects (p less than 0.001). Total urinary coproporphyrin excretion was markedly increased in patients with Rotor's syndrome (332 +/- 86 mug/g creatinine) as compared to that in control subjects (p less than 0.001) or obligate heterozygotes (p less than 0.025). With respect to urinary coproporphyrin excretion, Rotor's syndrome and Dubin-Johnson syndrome are both inherited as autosomal recessive traits and are separate pathophysiologic entities. Study of rare but distinct inheritable disorders, such as these, provide insight into the functional dissociation of hepatic transport mechanisms.

Animals↗

Molecular genetics of inherited antithrombin III deficiencies.

The cloning of antithrombin III (ATIII) complementary deoxyribonucleic acids and the determination of the ATIII gene structure have permitted a systematic evaluation of the molecular basis for inherited ATIII deficiencies. Sixteen kindreds with the most common form of the deficiency, in which plasma ATIII antigen levels and activity are proportionately reduced, were studied. Two polymorphic deoxyribonucleic acid markers were used to resolve parental ATIII alleles and to trace their inheritance patterns. In 15 of 16 cases, the structure of the affected ATIII allele was indistinguishable from normal, suggesting that relatively small mutations, resulting in gene inactivation, are responsible for the lower ATIII levels in these affected families. In the remaining kindred, complete deletion of one ATIII allele was seen. Also investigated was the molecular basis for a qualitative form of ATIII deficiency in a French-Canadian family with normal levels of immunoreactive protein but only half the expected levels of serine protease inhibitor activity. Using polymorphic markers, the abnormal allele was identified, cloned, and partially sequenced from the propositus. A single G----A transition was seen in the first base of codon 382, resulting in an alanine----threonine substitution in the defective protein. This mutation, together with others in this vicinity, defines a minimal length for a fully functional thrombin-binding domain.

Antithrombin III↗

Autosomal dominantly inherited macular dystrophy with preferential short-wavelength sensitive cone involvement.

We found an apparently inherited tritan-like color vision defect in five members of a family, spanning three generations. The defect was associated with mild macular pigmentary changes, poor foveolar reflexes, or slightly reduced visual acuity in four of the affected individuals. The inheritance pattern appeared to be autosomal dominant. Results of various color vision tests indicated preferential involvement of the short-wavelength sensitive cone system, with relative preservation of the middle- and long-wavelength sensitive cone systems. Both anomaloscope testing with larger (8-degree) fields and short-wavelength sensitive electroretinography indicated some short-wavelength sensitive cone system involvement beyond the central macula in the three affected individuals on whom testing was performed. The condition appeared to be a familial macular dystrophy with preferential short-wavelength sensitive cone involvement. The abnormal macular findings and mild reduction in visual acuity distinguish this condition from congenital tritanopia; the normal optic disks distinguish it from autosomal dominant optic atrophy.

Adolescent↗

Uniparental inheritance of a chloroplast photosystem II polypeptide controlling herbicide binding.

The ability of atrazine to inhibit Photosystem II electron transport and the rate of electron transfer from the primary to the secondary quinone electron acceptors in the photosystem II complex were examined in triazine-resistant and -susceptible parental biotypes of Brassica campestris L. and their F1 progeny derived from reciprocal crosses. The lack of herbicide inhibitory activity and the presence of functional properties which decreased the Q- to B electron transport rate constant were inherited in parallel through the maternal parent. We conclude that the herbicide receptor protein is uniparentally inherited through the female parent. These data are discussed in relation to other studies which indicate that the binding site is a 32 000-dalton polypeptide which determines the functional properties of B (the secondary Photosystem II electron acceptor).

2,6-Dichloroindophenol↗

Maternal inheritance of deleted mitochondrial DNA in a family with mitochondrial myopathy.

Skeletal muscles from a mother and her daughter both with chronic progressive ophthalmoplegia were analyzed. Histological and biochemical analyses of their muscle samples showed typical features of this type of mitochondrial myopathy. Southern blot analysis revealed that, in both patients, there were two species of mitochondrial DNA (mtDNA): normal one and partially deleted one. The sizes of the deletion were different; the mutant mtDNAs from the mother and the daughter had about 2.5- and 5-kilobase deletions, respectively. The two mutant mtDNAs shared a common deleted region of 1.2-kilobase. However, both the start and the end of deletion were different between them, implying a novel mode of inheritance. This is the first report that the mutant mtDNA is responsible for the maternal inheritance of a human disease.

Adolescent↗

Sick photoreceptors attract activated microglia from the ganglion cell layer: a model to study the inflammatory cascades in rats with inherited retinal dystrophy.

Understanding of neuron-glial interactions in neurodegenerative diseases remains limited, but is of crucial importance for unravelling the etiology of such disorders both in humans and in animals. The present work employed a new, function-dependent technique for examining the role of microglia in rats afflicted with inherited retinal photoreceptor degeneration (strain: royal college of surgeons, RCS). In this rat strain, which served as a surrogate for human inherited retinal photoreceptor dystrophy, the optic nerve was cut and the ganglion cells were retrogradely labelled with the fluorescent dye 4Di-10ASP. The experiment was performed under three different conditions: (1) at the 50th day of postnatal age (P50) when there is ongoing degeneration of photoreceptor cells, (2) at P110 when most photoreceptors were degenerated and (3) at P50 in non-dystrophic rats of the Sprague-Dawley strain. After axotomy-induced ganglion cell death and labelling of activated microglia by phagocytosis of the ganglion cell debris, this study monitored whether the labelled and therefore identifiable microglial cells within the severed ganglion cell layer (GCL) are prompted to migrate and to participate in phagocytosis of debris produced within the endogenously degenerating photoreceptor cell layer (PRL). Massive migration of microglial cells from the GCL to the PRL occurred in dystrophic animals with optic nerve transection at P50. Double-labelling of microglial cells with the fluorescent dye ingested within the GCL and with lipofuscin ingested within the PRL indicated the ability of these cells to perform double-phagocytosis.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Deficit of inhibitory glycine receptors in spinal cord from Peruvian Pasos: evidence for an equine form of inherited myoclonus.

Inherited myoclonus in Poll Hereford calves and spasticity in the spastic mouse (spa/spa) are characterized by myoclonic jerks of the skeletal musculature which occur spontaneously and in response to sensory stimuli, symptoms resembling those in subconvulsive strychnine poisoning. The primary, biochemical defect in these myoclonic animals is a deficit of inhibitory glycine receptors in the central nervous system. We now report the occurrence of similar stimulus-induced myoclonus in individual, pure-bred Peruvian Paso horses and an associated, specific deficiency in the density of [3H]strychnine binding to inhibitory glycine receptors sites in spinal cord of these animals. Specificity of the deficit was confirmed by a demonstrated lack of change in the density of several other receptor types in affected spinal cord, including muscarinic receptors and GABAA/benzodiazepine receptors. In light of the existence of genetically-inherited myoclonus in other species, these results suggest the occurrence of an equine form of the disorder.

Animals↗

Animal models of inherited hematologic disease.

Inherited or acquired hematologic disease is the most prevalent of all human disease when we include the hematologic disorders which are secondary to disease of other systems. It follows that the study of the fundamental mechanisms of the disease processes affecting the hematopoietic system is of prime importance and much remains to be done when one considers that in only 25% of ail hemolytic anemias is the fundamental cause eventually discovered [150]. In the current climate of societal pressures on experimental animal research, animals with spontaneous inherited disease mimicking diseases of the various physiological systems assume proportionately greater importance. These animal models have been extremely valuable in the study of fundamental questions of molecular genetics, metabolic aberrations of the cell and its membrane, synthetic mechanisms of the cell as well as clinical questions of disease manifestations, pathogenetic mechanisms and management. Exploration of differences between normal animal species offer a secondary avenue of investigation into these same fundamental questions. New animal models are being uncovered constantly and this augurs well for the future of biomedical research and the ultimate benefit to humankind and to animals in their own right.

Animals↗

Inherited occurrence of a heat stable alkaline phosphatase in the absence of malignant disease.

We describe a family with an inherited persistent elevation of serum alkaline phosphatase activity in the absence of malignant disease, observed for at least 15 yr. Isoenzyme studies revealed that this increased activity was due to an enzyme which showed similarities to serum placental alkaline phosphatase from pregnant women having the following properties: high heat stability; reactivity to anti-placental alkaline phosphatase antiserum; lack of inhibition by L-homoarginine; moderate inhibition by EDTA; and lack of interaction with wheat germ lectin. The enzyme was less sensitive than placental alkaline phosphatase to inhibition by L-phenylalanine, L-tryptophan, L-leucine, L-leucyl-glycyl-glycine and L-phenylalanyl-glycyl-glycine. The enzyme also differed from the placental alkaline phosphatase in its electrophoretic mobility, isoelectric heterogeneity and apparent molecular mass. We conclude that the enzyme is an inherited heat stable alkaline phosphatase variant which might correspond to a rare phenotype of placental alkaline phosphatase.

Adult↗

African trypanosomes: inheritance of factors involved in resistance.

The C3HeB/FeJ mouse strain has a shorter survival time and is therefore more susceptible to a Trypanosoma brucei rhodesiense infection than the B10.BR/SgSnJ strain. The work reported here demonstrated that survival time is inherited as a recessive trait, whereas the ability to produce antibody to the first variant antigen population is inherited as a dominant trait. It was therefore not possible to correlate survival time with the ability to produce antibody in the F-1 and F-2 offspring. Both characteristics appeared to be multigenic. In addition, it was not possible to link the ability of an animal to control its early parasitemia, or its change in hematocrit, with either antibody production or survival time. The work strongly suggests that the increased survival time of the B10.BR/SgSnJ mouse is due at least partially to nonspecific but unidentified factors which do not segregate with VSG-specific immune responses. These nonspecific factors could include differences in susceptibility to toxic trypanosome catabolites.

Animals↗